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Maitake Beta-Glucan Enhances Umbilical Cord Blood Stem Cell Transplantation in the NOD/SCID Mouse

机译:Maitake Beta-葡聚糖增强了NOD / SCID小鼠的脐血干细胞移植

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摘要

Beta glucans are cell wall constituents of yeast, fungi and bacteria, as well as mushrooms and barley. Glucans are not expressed on mammalian cells and are recognized as pathogen-associated molecular patterns (PAMPS) by pattern recognition receptors (PRR). Beta glucans have potential activity as biological response modifiers for hematopoiesis and enhancement of bone marrow recovery after injury. We have reported that Maitake beta glucan (MBG) enhanced mouse bone marrow (BMC) and human umbilical cord blood (CB) cell granulocyte-monocyte colony forming unit (GM-CFU) activity in vitro and protected GM-CFU forming stem cells from doxorubicin (DOX) toxicity. The objective of this study was to determine the effects of MBG on expansion of phenotypically distinct subpopulations of progenitor and stem cells in CB from full-term infants cultured ex vivo and on homing and engraftment in vivo in the nonobese diabetic/severe combined immunodeficient (NOD/SCID) mouse. MBG promoted a greater expansion of CD34+CD33+CD38− human committed hematopoietic progenitor (HPC) cells compared to the conventional stem cell culture medium (P = 0.002 by ANOVA). CD34+CXCR4+CD38− early, uncommitted human hematopoietic stem cell (HSC) numbers showed a trend towards increase in response to MBG. The fate of CD34+ enriched CB cells after injection into the sublethally irradiated NOS/SCID mouse was evaluated after retrieval of xenografted human CB from marrow and spleen by flow cytometric analysis. Oral administration of MBG to recipient NOS/SCID mice led to enhanced homing at 3 days and engraftment at 6 days in mouse bone marrow (P = 0.002 and P = 0.0005, respectively) compared to control mice. More CD34+ human CB cells were also retrieved from mouse spleen in MBG treated mice at 6 days after transplantation. The studies suggest that MBG promotes hematopoiesis through effects on CD34+ progenitor cell expansion ex vivo and when given to the transplant recipient could enhance CD34+ precursor cell homing and support engraftment.
机译:β-葡聚糖是酵母,真菌和细菌以及蘑菇和大麦的细胞壁成分。葡聚糖不表达在哺乳动物细胞上,并被模式识别受体(PRR)识别为病原体相关分子模式(PAMPS)。 β-葡聚糖具有潜在的活性,可作为造血功能的生物反应调节剂并增强损伤后的骨髓恢复。我们已经报道Maitake Beta葡聚糖(MBG)在体外增强了小鼠骨髓(BMC)和人脐带血(CB)细胞粒细胞-单核细胞集落形成单位(GM-CFU)的活性,并保护了形成阿霉素的GM-CFU干细胞(DOX)毒性。这项研究的目的是确定MBG对离体培养的足月婴儿的CB表型不同的祖细胞和干细胞亚群的扩展以及对非肥胖糖尿病/严重联合免疫缺陷(NOD)的归巢和植入的影响/ SCID)鼠标。与常规干细胞培养基相比,MBG促进了CD34 + CD33 + CD38-人定型造血祖细胞(HPC)的更大扩增(ANOVA P = 0.002)。 CD34 + CXCR4 + CD38-早期,未定型的人类造血干细胞(HSC)数量显示出对MBG应答增加的趋势。通过流式细胞术分析从骨髓和脾中获取异种移植的人CB后,评估注入到亚致死剂量的NOS / SCID小鼠体内后,富含CD34 +的CB细胞的命运。与对照小鼠相比,向受体NOS / SCID小鼠口服MBG导致小鼠骨髓中3天归巢增强和6天时植入(分别为P = 0.002和P = 0.0005)。在移植后6天,从MBG处理的小鼠的小鼠脾脏中还回收了更多的CD34 +人CB细胞。研究表明,MBG通过影响离体CD34 +祖细胞的扩增来促进造血功能,当给予移植受体时,MBG可以增强CD34 +前体细胞的归巢并支持植入。

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